基于UPFC的Levy飞行灰狼优化算法的并网WECS无功控制

P. Rajivgandhi, J. Baskaran, S. A. Elankurisil
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引用次数: 0

摘要

输电网工作的基本工作之一是稳定输电网内的无功功率。随着风力发电方法的不断发展,风力发电机组除了在瞬态情况下,还必须在峰值水平上参与无功发电。这项工作产生了UPFC控制对风能系统供电的电力系统强度的影响。为了保证UPFC对风资源公用电网系统的有效调节,对UPFC补偿器的分量整定问题进行了采样。本文对DFIG系统进行了基本的阐述。接着介绍了UPFC连接系统及其在电力系统和风电场中的应用。因此,明确了Levy飞行灰狼优化技术对UPFC网络进行补偿。最后,介绍了实功率和无功功率的补偿技术。通过仿真说明了各种控制技术的安装效果。在Mat lab/Simulink中进行了仿真分析,并用所提出的补偿器的性能对输出进行了解释
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Reactive Power control of Grid Connected WECS with Levy flight Grey Wolf Optimizer Algorithm by UPFC
One of the basic works of transmission networks work is to stabilize the reactive power inside a utility grid fed to an energy system. By growing methodologies in the wind storage, wind connected turbines has to involve in the reactive power generation through peak level in addition to transient circumstances. This work produces the effects of UPFC controlling on the strength of power systems fed with the wind energy systems. To ensure the efficiency of UPFC on the regulation of wind resource utility grid system, the component tuning of UPFC compensators is an important issue in the regularization is sampled. In this work, at basic, DFIG system is explained. After them, UPFC connected system and its usages in electric systems and wind plants are explained. Therefore, the Levy flight gray wolf optimizer technique is clarified for compensating the UPFC network. Lastly, compensation techniques for real and reactive power are also explained. The outcome of the installation of every control technique is explained by simulation. Simulation analysis are taken out in Mat lab/Simulink and the outputs explained with performance of the proposed compensator
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